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小鼠脊髓神经节中的神经元周围卫星细胞在其整个生命周期中都表达缝隙连接蛋白连接蛋白43,且在老年时表达量下降。

Perineuronal satellite cells in mouse spinal ganglia express the gap junction protein connexin43 throughout life with decline in old age.

作者信息

Procacci Patrizia, Magnaghi Valerio, Pannese Ennio

机构信息

Institute of Histology, Embryology and Neurocytology, University of Milan, Via Mangiagalli 14, Milan, Italy.

出版信息

Brain Res Bull. 2008 Mar 28;75(5):562-9. doi: 10.1016/j.brainresbull.2007.09.007. Epub 2007 Oct 17.

Abstract

Satellite glial cells that envelope the bodies of sensory neurons in spinal ganglia are connected to each other by gap junctions and exhibit dye coupling. These junctions may endow perineuronal satellite cells with the coordination necessary for the efficient performance of functions such as buffering of K(+) in the perineuronal microenvironment, provision of metabolic support to ganglionic neurons, and neuroprotection. Our knowledge of gap junctions has increased considerably in recent years, but little information is available on the connexins that form these junctions in spinal ganglia. In the present study we set out to determine whether the perineuronal satellite cells of mouse spinal ganglia express the connexins that are mainly present in neuroglial cells (Cx32 and Cx43). In young (3 months) mice, PCR showed the presence of both Cx32 and Cx43 transcripts. By immunocytochemistry, we localized Cx32 to axon-ensheathing Schwann cells, but not to other parts of the ganglion. We found Cx43 positivity in the perineuronal satellite cells, which were identified by their immunoreactivity to S100 protein and to glutamine synthetase. PCR showed Cx43 transcripts also in the spinal ganglia of adult (8 months) and old (24 months) animals. Cx43 immunostaining was present in satellite cells surrounding all nerve cell bodies, irrespective of size. The mean number of Cx43-immunoreactive puncta was significantly lower in the perineuronal satellite cells of aged mice compared to young and adult animals. This latter finding is consistent with observations in non-nervous tissues, and the hypothesis that a prominent decrease in Cx43 is a marker of senescence.

摘要

包绕脊髓神经节中感觉神经元胞体的卫星神经胶质细胞通过缝隙连接相互连接,并表现出染料偶联。这些连接可能赋予神经周卫星细胞协调能力,以有效执行诸如在神经周微环境中缓冲K(+)、为神经节神经元提供代谢支持以及神经保护等功能。近年来,我们对缝隙连接的了解有了显著增加,但关于在脊髓神经节中形成这些连接的连接蛋白的信息却很少。在本研究中,我们着手确定小鼠脊髓神经节的神经周卫星细胞是否表达主要存在于神经胶质细胞中的连接蛋白(Cx32和Cx43)。在年轻(3个月)小鼠中,PCR显示同时存在Cx32和Cx43转录本。通过免疫细胞化学,我们将Cx32定位于轴突包绕的施万细胞,而非神经节的其他部分。我们在神经周卫星细胞中发现了Cx43阳性,这些细胞通过其对S100蛋白和谷氨酰胺合成酶的免疫反应性得以鉴定。PCR还显示成年(8个月)和老年(24个月)动物的脊髓神经节中也存在Cx43转录本。Cx43免疫染色存在于围绕所有神经细胞体的卫星细胞中,与细胞大小无关。与年轻和成年动物相比,老年小鼠神经周卫星细胞中Cx43免疫反应性斑点的平均数量显著降低。这一发现与在非神经组织中的观察结果一致,也支持Cx43显著减少是衰老标志物的假说。

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